Study of Nickel Leaching Using Sulfuric Acid and Phosphoric Acid on The Selectivity Nickel Ore

Authors

Syamsul Hidayat , Sri Yulianti , Dian Anggreini , Syamsul Bahtiar

DOI:

10.29303/jpm.v16i3.2602

Published:

2021-06-02

Issue:

Vol. 16 No. 3 (2021): Juni 2021

Keywords:

laterite, nickel, recovery, sulfuric acid, phosphoric acid.

Articles

Downloads

How to Cite

Hidayat, S., Yulianti, S., Anggreini, D., & Bahtiar, S. (2021). Study of Nickel Leaching Using Sulfuric Acid and Phosphoric Acid on The Selectivity Nickel Ore. Jurnal Pijar Mipa, 16(3), 393–396. https://doi.org/10.29303/jpm.v16i3.2602

Downloads

Download data is not yet available.

Metrics

Metrics Loading ...

Abstract

Study of nickel leaching using sulfuric acid and phosphoric acid on the selectivity of low-grade laterite nickel ore under atmospheric conditions has been successfully carried out. In this study, the laterite nickel leaching process was carried out by varying the solution concentration and operating time. The concentrations of sulfuric acid and phosphoric acid solutions were varied at 5 M and 6 M concentrations, while the operating time was varied at 4 hours and 6 hours. For other operating conditions, it is kept constant with an operating temperature of 90 ââÆ, pulp density 15% w / v, particle size ââ°Â¤ 200 mesh. After that, the analysis stage was carried out using an atomic absorption spectroscopy (AAS) tool to determine the nickel content in the sample. The results showed that the highest nickel recovery was obtained at the concentration of 5 M sulfuric acid solution of 2.60% and 5 M phosphoric acid of 2.59% with the optimum operating time at 4 hours of operating time.

References

Mubarok, M. Z., & Fathoni, M. W. (2016). Studi Kinetika Pelindian Bijih Nikel Limonit Dari Pulau Halmahera Dalam Larutan Asam Nitrat [Kinetics Study of Nickel Limonite Ore Leaching from Halmahera Island in Nitric Acid Solution]. Metalurgi, 31(1), 59-68.

Mudd, G. M. (2009, August). Nickel sulfide versus laterite: the hard sustainability challenge remains. In Proceedings of the 48th Conference of Metallurgists (pp. 1-10).

Prasetiyo, P. (2008). Pemanfaatan Potensi Bijih Nikel Indonesia Pada Saat Ini dan Masa Mendatang. Metalurgi, 23(1), 47-56.

Kyle, J. (2010). Nickel laterite processing technologiesââ¬âwhere to next? Nickel/ Cobalt/ Copper Conference, 24 - Nickel Katerite Processing Technologies.24ââ¬â27.

Wanta, K. C., Tanujaya, F. H., Susanti, R. F., Petrus, H. T. B. M., Perdana, I., & Astuti, W. (2018). Studi kinetika proses atmospheric pressure acid leaching bijih laterit limonit menggunakan larutan asam nitrat konsentrasi rendah.

Li, G., Zhou, Q., Zhu, Z., Luo, J., Rao, M., Peng, Z., & Jiang, T. (2018). Selective leaching of nickel and cobalt from limonitic laterite using phosphoric acid: An alternative for value-added processing of laterite. Journal of Cleaner Production, 189, 620-626.

Lestari, M. R. (2018). Perolehan Kembali Aluminium dari Lumpur PDAM dengan Elektrolisis menggunakan Membran Penukar Anion (Doctoral dissertation, Institut Teknologi Sepuluh Nopember).

Zuniga, M., & Asselin, E. (2009). Reduction of limonitic laterite in ammoniacal solutions using metallic iron. In Hydrometallurgy of Nickel and Cobalt,(Proceedings Intl. Symposium, Sudbury, Canada) (pp. 459-471). CIM Montreal.

Lestari, L., Arsa, M., & Suirta, I. W. Pengaruh Konsentrasi Asam Fosfat Dan Berat Semen Putih Sebagai Adsorben Dalam Pemurnian Crude Gliserol. Jurnal Kimia (Journal of Chemistry).

Nugraheni, I. K., & Persada, A. A. B. (2017). The Influence of Bleaching Palm Oil Mill Effluent (Pome) Using Activated Active Charcoal in Reducing Free Fatty Acid. In Seminar Nasional Riset Terapan (Vol. 2, pp. E18-E24).

Soetopo, R. S., Purwati, S., Setiawan, Y., Aini, M. N., Surahman, A., & Asthary, P. B. (2016). PELET PUPUK ORGANIK DARI RESIDU DIGESTASI ANAEROBIK LIMBAH LUMPUR PABRIK KERTAS (Organic Fertilizer Pellet from Anaerobic Digestion Residue of Paper Mill Sludge Waste). Jurnal Selulosa, 6(01).

Yuliusman, Y. (2016). Recovery Logam Nikel Dari Spent Katalis Nio/al2o3 Dengan Teknologi Leaching Menggunakan Amonia-amonium Karbonat. Jurnal Mipa, 39(2), 143-149.

Agustina, H. S. E. A., Bendiyasa, I. M., Petrus, H. T. B. M., Mufakir, F. R., & Astuti, W. (2018, July). Pelindian Nikel dari Bijih LimonitLow-Grade Pomalaa Menggunakan Pelarut Asam Asetat. In Seminar Nasional Teknik Kimia Kejuangan (p. 8).

Fathoni, M. W., & Mubarok, M. Z. (2016). Studi Perilaku Pelindian Bijih Nikel Limonit dari Pulau Halmahera dalam Larutan Asam Nitrat [Study on the Leaching Behaviour of Limonite Nickel Ore From Halmahera Island in Nitric Acid Solution]. Metalurgi, 30(3), 115-124.

Majalis, A. N., Permatasari, N. V., Novitasari, Y., Wicaksono, N., Armin, D., & Pratiwi, R. Kajian Awal Produksi Fero Sulfat dari Slag Nikel Melalui Proses Pelindian Menggunakan Asam Sulfat. Jurnal Ilmu Lingkungan, 18(1), 31-38.

Author Biographies

Syamsul Hidayat, Program Studi Teknik Metalurgi Universitas Teknologi Sumbawa

Program Studi Teknik Metalurgi Universitas Teknologi Sumbawa

Sri Yulianti, Program Studi Teknik Metalurgi Universitas Teknologi Sumbawa

Dian Anggreini, Program Studi Teknik Metalurgi Universitas Teknologi Sumbawa

Syamsul Bahtiar, Program Studi Teknik Metalurgi Universitas Teknologi Sumbawa

License

The following terms apply to authors who publish in this journal:
1. Authors retain copyright and grant the journal first publication rights, with the work simultaneously licensed under a Creative Commons Attribution License 4.0 International License (CC-BY License) that allows others to share the work with an acknowledgment of the work's authorship and first publication in this journal.

2. Authors may enter into separate, additional contractual arrangements for the non-exclusive distribution of the journal's published version of the work (e.g., posting it to an institutional repository or publishing it in a book), acknowledging its initial publication in this journal.
3. Before and during the submission process, authors are permitted and encouraged to post their work online (e.g., in institutional repositories or on their website), as this can lead to productive exchanges as well as earlier and greater citation of published work (See The Effect of Open Access).

Similar Articles

1 2 3 4 > >> 

You may also start an advanced similarity search for this article.